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Assessment and Prediction of Binaural Aspects of Audio Quality

机译:音频质量的双耳方面的评估和预测

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摘要

Binaural or spatial presentation of audio signals has become increasingly important in consumer sound reproduction, but also for hearing assistive devices like hearing aids, where signals in both ears might undergo heavy signal processing. Such processing might introduce distortions to the interaural signal properties that affect perception. Here, an approach for intrusive binaural auditory-model-based quality prediction (BAM-Q) is introduced. BAM-Q uses a binaural auditory model as front-end to extract the three binaural features interaural level difference, interaural time difference, and a measure of interaural coherence. The current approach focuses on the general applicability (with respect to binaural signal differences) of the binaural quality model to arbitrary binaural audio signals. Thus, two listening experiments were conducted to subjectively measure the influence of these binaural features and their combinations on binaural quality perception. The results were used to train BAM-Q. Two different hearing aid algorithms were used to evaluate the performance of the model. The correlations between subjective mean ratings and model predictions are higher than 0.9.
机译:音频信号的双耳或空间表示在消费者声音的再现中变得越来越重要,但对于助听器(如助听器)来说,双耳中的信号可能会经过重信号处理,因此变得越来越重要。这样的处理可能会给影响感知的耳间信号特性引入失真。在此,介绍了一种基于侵入性双耳听觉模型的质量预测(BAM-Q)的方法。 BAM-Q使用双耳听觉模型作为前端来提取三个双耳特征:听觉水平差,听觉时间差和听觉连贯性。当前的方法集中于双耳质量模型对任意双耳音频信号的一般适用性(关于双耳信号差)。因此,进行了两个听力实验,主观地测量了这些双耳特征及其组合对双耳质量感知的影响。结果用于训练BAM-Q。两种不同的助听器算法用于评估模型的性能。主观平均评级与模型预测之间的相关性高于0.9。

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  • 来源
    《Journal of the Audio Engineering Society》 |2017年第11期|929-942|共14页
  • 作者单位

    HoerTech gGmbH and Cluster of Excellence Hearing4All, Oldenburg, Germany,Medizinische Physik and Cluster of Excellence Hearing4All, Universitaet Oldenburg, Oldenburg, Germany;

    HoerTech gGmbH and Cluster of Excellence Hearing4All, Oldenburg, Germany;

    Medizinische Physik and Cluster of Excellence Hearing4All, Universitaet Oldenburg, Oldenburg, Germany;

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